Department of Cell Biology, Institute of General and Molecular Biology, Nicolaus Copernicus University, Toruń, Poland.
Histochem Cell Biol. 2011 Nov;136(5):527-41. doi: 10.1007/s00418-011-0861-8. Epub 2011 Sep 9.
Small nuclear ribonucleoproteins (snRNPs) play a fundamental role in pre-mRNA processing in the nucleus. The biogenesis of snRNPs involves a sequence of events that occurs in both the nucleus and cytoplasm. Despite the wealth of biochemical information about the cytoplasmic assembly of snRNPs, little is known about the spatial organization of snRNPs in the cytoplasm. In the cytoplasm of larch microsporocytes, a cyclic appearance of bodies containing small nuclear RNA (snRNA) and Sm proteins was observed during anther meiosis. We observed a correlation between the occurrence of cytoplasmic snRNP bodies, the levels of Sm proteins, and the dynamic formation of Cajal bodies. Larch microsporocytes were used for these studies. This model is characterized by natural fluctuations in the level of RNA metabolism, in which periods of high transcriptional activity are separated from periods of low transcriptional activity. In designing experiments, the authors considered the differences between the nuclear and cytoplasmic phases of snRNP maturation and generated a hypothesis about the direct participation of Sm proteins in a molecular switch triggering the formation of Cajal bodies.
小核核糖核蛋白 (snRNPs) 在细胞核中前体 mRNA 的加工中起着至关重要的作用。snRNPs 的生物发生涉及在细胞核和细胞质中发生的一系列事件。尽管有关 snRNPs 在细胞质中组装的生化信息丰富,但对细胞质中 snRNPs 的空间组织知之甚少。在落叶松小孢子母细胞的细胞质中,在花粉母细胞减数分裂过程中观察到含有小核 RNA (snRNA) 和 Sm 蛋白的体的周期性出现。我们观察到细胞质 snRNP 体的出现、Sm 蛋白的水平和 Cajal 体的动态形成之间存在相关性。落叶松小孢子母细胞用于这些研究。该模型的特点是 RNA 代谢水平的自然波动,其中转录活性高的时期与转录活性低的时期隔开。在设计实验时,作者考虑了 snRNP 成熟的核和细胞质阶段之间的差异,并提出了一个假设,即 Sm 蛋白直接参与触发 Cajal 体形成的分子开关。